The antagonistic transcription factors, EspM and EspN, regulate the ESX-1 secretion system in M. marinum

被引:4
作者
Nicholson, Kathleen R. [1 ,6 ]
Cronin, Rachel M. [1 ,2 ]
Prest, Rebecca J. [1 ]
Menon, Aruna R. [3 ]
Yang, Yuwei [1 ]
Jennisch, Madeleine K. [1 ]
Champion, Matthew M. [1 ,4 ]
Tobin, David M. [3 ,5 ]
Champion, Patricia A. [1 ]
机构
[1] Univ Notre Dame, Eck Inst Global Hlth, Dept Biol Sci, Notre Dame, IN 46556 USA
[2] US FDA, Ctr Biol Evaluat & Res, Div Bacterial Parasit & Allergen Products, Lab Resp & Special Pathogens,Off Vaccines Res & Re, Silver Spring, MD USA
[3] Duke Univ Sch Med, Dept Mol Genet & Microbiol, Durham, NC USA
[4] Univ Notre Dame, Dept Chem & Biochem, Notre Dame, IN USA
[5] Duke Univ Sch Med, Dept Immunol, Durham, NC USA
[6] Northwestern Univ, Dept Microbiol Immunol, Feinberg Sch Med, Chicago, IL USA
关键词
Mycobacterium; type VII secretion; ESX-1; regulation; transcription; MYCOBACTERIUM-TUBERCULOSIS; VIRULENCE REGULATOR; 2-COMPONENT SYSTEM; III SECRETION; GENE-CLUSTER; PROTEIN; ESAT-6; PHOPR; EXPRESSION; REQUIREMENTS;
D O I
10.1128/mbio.03357-23
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Bacterial pathogens use protein secretion systems to transport virulence factors and regulate gene expression. Among pathogenic mycobacteria, including Mycobacterium tuberculosis and Mycobacterium marinum, the ESAT-6 system 1 (ESX-1) secretion is crucial for host interaction. Secretion of protein substrates by the ESX-1 secretion system disrupts phagosomes, allowing mycobacteria cytoplasmic access during macrophage infections. Deletion or mutation of the ESX-1 system attenuates mycobacterial pathogens. Pathogenic mycobacteria respond to the presence or absence of the ESX-1 system in the cytoplasmic membrane by altering transcription. Under laboratory conditions, the EspM repressor and WhiB6 activator control transcription of specific ESX-1-responsive genes, including the ESX-1 substrate genes. However, deleting the espM or whiB6 gene does not phenocopy the deletion of the ESX-1 substrate genes during macrophage infection by M. marinum. In this study, we identified EspN, a critical transcription factor whose activity is masked by the EspM repressor under laboratory conditions. In the absence of EspM, EspN activates transcription of whiB6 and ESX-1 genes during both laboratory growth and macrophage infection. EspN is also independently required for M. marinum growth within and cytolysis of macrophages, similar to the ESX-1 genes, and for disease burden in a zebrafish larval model of infection. These findings suggest that EspN and EspM coordinate to counterbalance the regulation of the ESX-1 system and support mycobacterial pathogenesis.IMPORTANCEPathogenic mycobacteria, which are responsible for tuberculosis and other long-term diseases, use the ESX-1 system to transport proteins that control the host response to infection and promote bacterial survival. In this study, we identify an undescribed transcription factor that controls the expression of ESX-1 genes and is required for both macrophage and animal infection. However, this transcription factor is not the primary regulator of ESX-1 genes under standard laboratory conditions. These findings identify a critical transcription factor that likely controls expression of a major virulence pathway during infection, but whose effect is not detectable with standard laboratory strains and growth conditions.
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页数:18
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